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Densely drilled glass fiber reinforced plastic (GFRP) pipelines are thought to be of prosperous future in sand control in oilfield.
Hence the present study is aimed to investigate the influence of different cooling methods on quality characteristics (drill temperature and damage factor) while drilling glass fibre reinforced epoxy (GFRE) non-laminated 20 mm thick pultruded composite rods having 80% fibre weight fraction and 0° fibre orientations with respect to the drill.
Work with great care when drilling glass.
Two kinds of drill bits are usually suitable for drilling glass: diamond or tungsten carbide.
Brush the dampened drilled glass dust away with a paper towel.
NEVER drill tank glass.
Drilling of glass fibre reinforced plastic (GFRP) composite is substantially different from metallic materials due to its mechanical properties.
Through work with the Mathies group, they now have extensive experience with precision high density diamond drilling of glass structures (however this is in an uncontrolled particulate environment).
Therefore, this study has carried out a designed experimental investigation while drilling float glass by Rotary ultrasonic machining (RUM) process.
This research outlines the Taguchi optimization methodology, which is applied to optimize cutting parameters in drilling of glass fiber reinforced composite (GFRC) material.
The current study investigates the influence of applying cryogenic liquid nitrogen cooling and minimum quantity lubrication (MQL) during drilling of glass aluminium reinforced epoxy (GLARE) fibre-metal laminates.
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